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Smith, J. M. L.

Publications and source records attributed to Smith, J. M. L..

2 recordsLinked to original sources

The form and function of a multi-functional weapon system in male and female burying beetles (Nicrophorus vespilloides)

Animal weapon systems are used for attack and defence during competition for resources including, though not confined to, competition for mates. They comprise the weapon itself and associated morphological structures - or weapon-supportive traits - that are essential for the deployment of the weapon in combat. We investigate the form and function of a weapon system in burying beetles Nicrophorus vespilloides, to better understand why it differs between the sexes. Both males and females engage in contests with members of their own sex to monopolise a scarce carrion breeding resource. We show that mandibles (weapon during biting) and head width (weapon-supportive trait) are larger in males, and that males exhibit a disproportionately larger increase in bite force with head width than females. However, in staged contests with size-matched rivals of the same sex, the weapon system functioned in the same way for males and females: for each sex, the combined effects of head width and maximum bite force best predicted contest outcome. We suggest that the component parts of the weapon system each serve multiple additional functions, including tasks associated with parental care, which contribute differently to fitness in each sex. The resulting divergent selection pressures may explain why sexual dimorphism persists.

evolutionary biology↗

Sexual dimorphism in head size in wild burying beetles (Nicrophorus vespilloides)

O_LIMale burying beetles (Nicrophorus vespilloides) carry an additional abdominal segment and produce pheromones but otherwise the species is thought to be sexually monomorphic. Both sexes bear bright orange bands on their black elytra, which probably function as part of a warning display rather than in mate choice. C_LIO_LIAlthough larger individuals are more likely to win contests to secure the small carrion required for reproduction, both sexes compete for this vital breeding resource. In wild populations, the sexes are alike in the mean and distribution in their body size. C_LIO_LIHere we describe a form of sexual size dimorphism in wild populations that has previously been overlooked. We show that males have wider heads than females, for any given body size, and that the scaling relationship with body size is hyperallometric in males, but isometric in females. We also show how absolute head width, and the extent of sexual dimorphism in head width differs among wild populations which are within c.10km of each other. C_LIO_LIWe suggest that head size dimorphism could be adaptive, and could be due to divergent selection arising from task specialisation during biparental care, since the duties of care favoured by males are likely to require a greater bite force. C_LI

evolutionary biology↗